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Q.Which of the following is the softest metal ? (A) Zn (B) Sc (C) Cu (D) Fe

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Softness in metals is determined by how easily their atoms slide past one another; among the transition elements listed, scandium (Sc) has the weakest metallic bonding due to having only one dd-electron available for bonding, making it the softest. The answer is (B).

Understanding Metallic Softness

Hardness in metals arises from the strength of metallic bonding—the electrostatic attraction between the "sea" of delocalized electrons and the positive metal ions. The more electrons available for delocalization (especially from dd-orbitals in transition metals), and the smaller the atomic radius, the stronger the bonding and the harder the metal.

Conversely, a soft metal has weaker metallic bonds. Its atoms can slide past one another more easily under stress, making it malleable and easy to deform.

Comparing the Four Metals

Let's examine each candidate by looking at their electronic configurations and the number of electrons contributing to metallic bonding:

  1. Zinc (Zn): Electronic configuration [Ar] 3d10 4s2[\text{Ar}] \, 3d^{10} \, 4s^2

    All ten dd-electrons are paired in filled orbitals. While the two 4s4s electrons participate in bonding, the filled d10d^{10} subshell contributes relatively little to directional bonding. Zinc is moderately soft but not the softest here.

  2. Scandium (Sc): Electronic configuration [Ar] 3d1 4s2[\text{Ar}] \, 3d^1 \, 4s^2

    Only one dd-electron is available. This is the first transition metal in the series, with minimal dd-orbital participation in bonding. The metallic bond is weak because there are fewer electrons to delocalize and the dd-orbitals are only just beginning to fill. Scandium is notably soft and can be cut with a knife.

  3. Copper (Cu): Electronic configuration [Ar] 3d10 4s1[\text{Ar}] \, 3d^{10} \, 4s^1 …

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